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quant-ph2026

Quantum secret sharing in tripartite superconducting network

W. K. Yam, C. Wilkinson, S. Gandorfer +6

Superconducting microwave quantum networks is a rapidly developing field, enabling distributed quantum computing and holding a promise for hybrid architectures in quantum internet.…

quant-ph2025

Practical quantum teleportation with finite-energy codebooks

W. K. Yam, M. Renger, S. Gandorfer +2

Quantum communication exploits non-classical correlations to achieve efficient and unconditionally secure exchange of information. In particular, the quantum teleportation protocol…

quant-ph2025

Probing an electron spin ensemble with squeezed microwave signals

P. Oehrl, F. Fesquet, K. E. Honasoge +5

The efficient transfer of quantum states into a long-lived storage unit such as solid-state spin ensembles is widely recognized as a critical challenge with significant implication…

quant-ph2025

Fabrication of low-loss Josephson parametric devices

K. E. Honasoge, M. Handschuh, W. K. Yam +7

Superconducting circuits incorporating Josephson elements represent a promising hardware platform for quantum technologies. Potential applications include scalable quantum computin…

quant-ph2024

Cryogenic microwave link for quantum local area networks

W. K. Yam, M. Renger, S. Gandorfer +16

Scalable quantum information processing with superconducting circuits is expected to advance from individual processors located in single dilution refrigerators to more powerful di…

quant-ph2024

Two-dimensional Planck spectroscopy for microwave photon calibration

S. Gandorfer, M. Renger, W. K. Yam +4

Quantum state tomography of weak microwave signals is an important part of many protocols in the field of quantum information processing with superconducting circuits. This step ty…